IP Library › Granted Patent US 10,676,639
Granted Patent B2
US 10,676,639 · App. 15/513,737 · Granted Jun 9, 2020

Colorless, transparent and heat resistant polyurethane films and methods for manufacturing the same

Inventors: Songlin Liu (Singapore, SG); Nie Yuntong (Singapore, SG); Lena Ouh (Singapore, SG); Rachel Tessy Mathew (Singapore, SG)
Assignee: Covestro Deutschland AG
C09D175/04C08G18/3212C08G18/3215C08G18/3221C08G18/3851C08G18/3872C08G18/4219C08G18/4241C08G18/792H01B1/08C08G18/324C08G18/3243C08G18/4277
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Quick Facts
Patent No.
US 10,676,639
App. No.
15/513,737
Granted
Jun 9, 2020
Kind
B2
Abstract

The present inventions concerns compositions for producing thermoset polyurethanes, comprising polyisocyanates and polyols selected from a list consisting of allicyclic, aromatic compounds and branched polyesters. The films obtained from these compositions exhibit a high transparency, high thermal stability and good chemical resistance, and a method to produce the same. The said polyurethane films can be widely used in electronics industry where high transparency, high thermal resistance and good chemical resistance are the main requirements. Particularly, these films can be used as the substrates for conductive coatings and barrier coatings. These functionally coated films are particularly useful in applications such as touch panels or photo-voltaic cells.

Claims (11)

1. A transparent conductive film, comprising a polyurethane film obtained from a composition, comprising polyisocyanates and polyols, wherein the polyol is one of compounds (c) or (g),

and wherein the polyisocyanate is a trimer of isophorondiisocyanate,

as a substrate and a transparent conductive oxide layer selected from the group consisting of indium tin oxide, fluorine doped tin oxide, doped zinc oxide such as aluminium-doped zinc oxide, indium-doped cadmium oxide and antimony tin oxide on said substrate.

2. The transparent conductive film of claim 1 , wherein the polyurethane film has a glass transition temperature Tg according to ASTM D3418 of at least 150° C.

3. The transparent conductive film of claim 1 , wherein the polyurethane film has a glass transition temperature Tg according to ASTM D3418 is at least 170° C.

4. The transparent conductive film of claim 1 , wherein the polyurethane film is obtained by casting said composition onto a carrier substrate.

5. The transparent conductive film according to claim 1 , wherein the transparent conductive oxide layer is deposited by sputtering, metal organic chemical vapor deposition, metal organic molecular beam deposition, spray pyrolysis and pulsed laser deposition.

6. An electronic device, comprising at least one transparent conductive film according to claim 1 .

7. The electronic device according to claim 6 , wherein the device is a display, an instrument panel, or a photo-voltaic cell.

8. The transparent conductive film of claim 1 , wherein the polyol is compounds (c).

9. The transparent conductive film of claim 1 , wherein the polyol is compounds (g).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2017
From: LIU, SONGLIN; YUNTONG, NIE; OUH, LENA; MATHEW, RACHEL TESSY
To: COVESTRO DEUTSCHLAND AG
Reel/Frame 042410/0194 →
Priority Claims (1)
EP 14186659 · Sep 26, 2014 · regional
Continuity (1)
Related Publication 20170283650A1 · Oct 5, 2017